Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA.
ACS Nano. 2009 Oct 27;3(10):3127-37. doi: 10.1021/nn900242v.
A comprehensive structural/architectural evaluation of the PtRu (1:1) alloy and Ru@Pt core-shell nanoparticles (NPs) provides spatially resolved structural information on sub-5 nm NPs. A combination of extended X-ray absorption fine structure (EXAFS), X-ray absorption near edge structure (XANES), pair distribution function (PDF) analyses, Debye function simulations of X-ray diffraction (XRD), and field emission transmission electron microscopy/energy dispersive spectroscopy (FE-TEM/EDS) analyses provides complementary information used to construct a detailed picture of the core/shell and alloy nanostructures. The 4.4 nm PtRu (1:1) alloys are crystalline homogeneous random alloys with little twinning in a typical face-centered cubic (fcc) cell. The Pt atoms are predominantly metallic, whereas the Ru atoms are partially oxidized and are presumably located on the NP surface. The 4.0 nm Ru@Pt NPs have highly distorted hcp Ru cores that are primarily in the metallic state but show little order beyond 8 A. In contrast, the 1-2 monolayer thick Pt shells are relatively crystalline but are slightly distorted (compressed) relative to bulk fcc Pt. The homo- and heterometallic coordination numbers and bond lengths are equal to those predicted by the model cluster structure, showing that the Ru and Pt metals remain phase-separated in the core and shell components and that the interface between the core and shell is quite normal.
对 PtRu(1:1)合金和 Ru@Pt 核壳纳米粒子(NPs)进行全面的结构/架构评估,提供了亚 5nm NPs 的空间分辨结构信息。扩展 X 射线吸收精细结构(EXAFS)、X 射线吸收近边结构(XANES)、配分函数(PDF)分析、X 射线衍射(XRD)的德拜函数模拟以及场发射透射电子显微镜/能谱分析(FE-TEM/EDS)的组合,提供了互补的信息,用于构建核心/壳和合金纳米结构的详细图像。4.4nm 的 PtRu(1:1)合金是具有很少孪晶的典型面心立方(fcc)晶胞的结晶均匀随机合金。Pt 原子主要是金属性的,而 Ru 原子部分氧化,并且假定位于 NP 表面。4.0nm 的 Ru@Pt NPs 具有高度扭曲的 hcp Ru 核,主要处于金属状态,但在 8Å 以外几乎没有秩序。相比之下,1-2 个单层厚的 Pt 壳相对较晶态,但相对于体心立方 Pt 略有扭曲(压缩)。同核和异核配位数和键长与模型簇结构预测的相同,表明 Ru 和 Pt 金属在核和壳成分中仍保持相分离,并且核和壳之间的界面非常正常。